[1] |
林畅松, 夏庆龙, 施和生, 2015: 地貌演化、源—汇过程与盆地分析[J]. 地学前缘, 22, 9-20.
|
Lin Changsong, Xia Qinglong, Shi Hesheng, et al. Geomorphological evolution, source to sink system and basin analysis[J]. Earth Science Frontiers, 2015, 22(1): 9-20. |
[2] |
Gong C L, Steel R J, Wang Y M, 2016: Shelf-margin architecture variability and its role in sediment-budget partitioning into deep-water areas[J]. Earth-Science Reviews, 154, 72-101.
|
[3] |
Wu W, Li Q, Yu J, 2018: The Central Canyon depositional patterns and filling process in east of Lingshui Depression, Qiongdongnan Basin, northern South China Sea[J]. Geological Journal, 53, 3064-3081.
|
[4] |
孙涛, 王建新, 孙玉梅, 2017: 西非塞内加尔盆地深水区油气地球化学特征与油气成藏[J]. 沉积学报, 35, 1284-1292.
|
Sun Tao, Wang Jianxin, Sun Yumei. Petroleum geochemical characteristics and accumulation in offshore of Senegal Basin[J]. Acta Sedimentologica Sinica, 2017, 35(6): 1284-1292. |
[5] |
Brooks H L, Hodgson D M, Brunt R L, 2018: Deep-water channel-lobe transition zone dynamics: Processes and depositional architecture, an example from the Karoo Basin, South Africa[J]. GSA Bulletin, 130, 1723-1746.
|
[6] |
Sun Q L, Cartwright J, Wu S G, 2016: Submarine erosional troughs in the northern South China Sea: Evidence for Early Miocene deepwater circulation and paleoceanographic change[J]. Marine and Petroleum Geology, 77, 75-91.
|
[7] |
Niyazi Y, Eruteya O E, Omosanya K O, 2018: Seismic geomorphology of submarine channel-belt complexes in the Pliocene of the Levant Basin, offshore central Israel[J]. Marine Geology, 403, 123-138.
|
[8] |
Zhao X M, Qi K, Liu L, 2018: Development of a partially-avulsed submarine channel on the Niger Delta continental slope: Architecture and controlling factors[J]. Marine and Petroleum Geology, 95, 30-49.
|
[9] |
Tian H X, Lin C S, Zhang Z T, 2021: Depositional architecture, evolution and controlling factors of the Miocene submarine canyon system in the Pearl River Mouth Basin, northern South China Sea[J]. Marine and Petroleum Geology, 128, 104990-.
|
[10] |
Ferry J N, Parize O, Mulder T, 2005: Sedimentary architecture and growth pattern of turbidite systems in distal part of a median fan; example of the Upper Miocene sedimentary sequence of the Lower Congo Basin[J]. Geodinamica Acta, 18, 145-152.
|
[11] |
Lavier L L, Steckler M S, Brigaud F, 2001: Climatic and tectonic control on the Cenozoic evolution of the West African margin[J]. Marine Geology, 178, 63-80.
|
[12] |
蔡露露, 刘春成, 吕明, 2016: 西非下刚果盆地深水水道发育特征及沉积储层预测[J]. 中国海上油气, 28, 60-70.
|
Cai Lulu, Liu Chuncheng, Ming Lü, et al. The development characteristics of deep water channel and sedimentary reservoir prediction in Lower Congo Basin, West Africa[J]. China Offshore Oil and Gas, 2016, 28(2): 60-70. |
[13] |
陈亮, 赵千慧, 王英民, 2017: 盐构造与深水水道的交互作用:以下刚果盆地为例[J]. 沉积学报, 35, 1197-1204.
|
Chen Liang, Zhao Qianhui, Wang Yingmin, et al. Interactions between submarine channels and salt structures: Examples from the Lower Congo Basin[J]. Acta Sedimentologica Sinica, 2017, 35(6): 1197-1204. |
[14] |
李全, 吴伟, 康洪全, 2019: 西非下刚果盆地深水水道沉积特征及控制因素[J]. 石油与天然气地质, 40, 917-929.
|
Li Quan, Wu Wei, Kang Hongquan, et al. Characteristics and controlling factors of deep-water channel sedimentation in Lower Congo Basin, West Africa[J]. Oil & Gas Geology, 2019, 40(4): 917-929. |
[15] |
Chen H, Lin C S, Zhang Z M, 2021: Evolution and controlling factors of the gravity flow deposits in the Miocene sequence stratigraphic framework, the Lower Congo—Congo Fan Basin, West Africa[J]. Petroleum Exploration and Development, 48, 146-158.
|
[16] |
龚承林, 王英民, 官宝聪, 2010: 典型被动大陆边缘深水盆地构造演化与层序地层学分析[J]. 沉积学报, 28, 419-425.
|
Gong Chenglin, Wang Yingmin, Guan Baocong, et al. The tectonic evolution and sequence stratigraphy of passive continental margins deep-water basin[J]. Acta Sedimentologica Sinica, 2010, 28(3): 419-425. |
[17] |
张文彪, 刘志强, 陈志海, 2015: 安哥拉深水水道地质知识库建立及应用[J]. 沉积学报, 33, 142-152.
|
Zhang Wenbiao, Liu Zhiqiang, Chen Zhihai, et al. Establishment and application of geological data base on deep-water channels in Angola Block[J]. Acta Sedimentologica Sinica, 2015, 33(1): 142-152. |
[18] |
Sutra E, Manatscha G, Mohn G, 2013: Quantification and restoration of extensional deformation along the western Iberia and Newfoundland rifted margins[J]. Geochemistry, Geophysics, Geosystems, 14, 2575-2597.
|
[19] |
Miller K G, Browning J V, Schmelz W J, 2020: Cenozoic sea-level and cryospheric evolution from deep-sea geochemical and continental margin records[J]. Science Advances, 6, -.
|
[20] |
Huang Y Q, 2018: Sedimentary characteristics of turbidite fan and its implication for hydrocarbon exploration in Lower Congo Basin[J]. Petroleum Research, 3, 189-196.
|
[21] |
林畅松, 2006: 沉积盆地的构造地层分析:以中国构造活动盆地研究为例[J]. 现代地质, 20, 185-194.
|
Lin Changsong. Tectono-stratigraphic analysis of sedimentary basins: A case study on the inland tectonically active basins in China[J]. Geoscience, 2006, 20(2): 185-194. |
[22] |
秦雁群, 万仑坤, 计智锋, 2018: 深水块体搬运沉积体系研究进展[J]. 石油与天然气地质, 39, 140-152.
|
Qin Yanqun, Wan Lunkun, Ji Zhifeng, et al. Progress of research on deep-water mass-transport deposits[J]. Oil & Gas Geology, 2018, 39(1): 140-152. |
[23] |
Moscardelli L, Wood L, Mann P, 2006: Mass-transport complexes and associated processes in the offshore area of Trinidad and Venezuela[J]. AAPG Bulletin, 90, 1059-1088.
|
[24] |
李磊, 王英民, 张莲美, 2010: 块体搬运复合体的识别、演化及其油气勘探意义[J]. 沉积学报, 28, 76-82.
|
Li Lei, Wang Yingmin, Zhang Lianmei, et al. Identification and evolution of mass transport complexes and its significance for oil and gas exploration[J]. Acta Sedimentologica Sinica, 2010, 28(1): 76-82. |
[25] |
秦磊, 毛金昕, 倪凤玲, 2020: 浅谈深水块体搬运复合体的结构、成因分类以及识别方法[J]. 地球科学进展, 35, 632-642.
|
Qin Lei, Mao Jinxin, Ni Fengling, et al. A brief introduction to deep-water mass-transport complexes: Structures, genetic classifications and identification methods[J]. Advances in Earth Science, 2020, 35(6): 632-642. |
[26] |
PosamentierH W, KollaV, 刘化清, 2019: 深水浊流沉积综述[J]. 沉积学报, 37, 879-903.
|
Posamentier H W, Kolla V, Liu Huaqing. An overview of deep-water turbidite deposition[J]. Acta Sedimentologica Sinica, 2019, 37(5): 879-903. |
[27] |
林畅松, 2019: 盆地沉积动力学:研究现状与未来发展趋势[J]. 石油与天然气地质, 40, 685-700.
|
Lin Changsong. Sedimentary dynamics of basin: Status and trend[J]. Oil & Gas Geology, 2019, 40(4): 685-700. |
[28] |
Séranne M, Abeigne C R N, 1999: Oligocene to Holocene sediment drifts and bottom currents on the slope of Gabon continental margin (west Africa): Consequences for sedimentation and southeast Atlantic upwelling[J]. Sedimentary Geology, 128, 179-199.
|
[29] |
Miller K G, Kominz M A, Browning J V, 2005: The Phanerozoic record of global sea-level change[J]. Science, 310, 1293-1298.
|
[30] |
Séranne M, Anka Z, 2005: South Atlantic continental margins of Africa: A comparison of the tectonic vs climate interplay on the evolution of equatorial west Africa and SW Africa margins[J]. Journal of African Earth Sciences, 43, 283-300.
|
[31] |
Fort X, Brun J P, Chauvel F, 2004: Salt tectonics on the Angolan margin, synsedimentary deformation processes[J]. AAPG Bulletin, 88, 1523-1544.
|
[32] |
Oluboyo A P, Gawthorpe R L, Bakke K, 2014: Salt tectonic controls on deep-water turbidite depositional systems: Miocene, southwestern Lower Congo Basin, offshore Angola[J]. Basin Research, 26, 597-620.
|
[33] |
Unternehr P, Péron-Pinvidic G, Manatschal G, 2010: Hyper-extended crust in the South Atlantic: In search of a model[J]. Petroleum Geoscience, 16, 207-215.
|
[34] |
Anka Z, Séranne M, Lopez M, 2009: The long-term evolution of the Congo deep-sea fan: A basin-wide view of the interaction between a giant submarine fan and a mature passive margin (ZaiAngo project)[J]. Tectonophysics, 470, 42-56.
|
[35] |
吕奇奇, 罗顺社, 李梦杰, 2020: 深水碎屑流与浊流混合事件层沉积特征及分布:以鄂尔多斯盆地西南长7油层组为例[J]. 东北石油大学学报, 44, 69-78.
|
Qiqi Lü, Luo Shunshe, Li Mengjie, et al. Sedimentary characteristics and distribution of deep-water hybrid event beds comprising debris and turbidites: A case study of Chang7 oil formation in the southwest of Ordos Basin[J]. Journal of Northeast Petroleum University, 2020, 44(2): 69-78. |
[36] |
秦雁群, 张光亚, 巴丹, 2016: 转换型被动陆缘盆地地质特征与深水油气聚集规律:以赤道大西洋西非边缘盆地群为例[J]. 地学前缘, 23, 229-239.
|
Qin Yanqun, Zhang Guangya, Ba Dan, et al. Geological characteristics and deep water hydrocarbon accumulation patterns of transformed passive continental marginal basins: A case history from basins of West Africa margin in Equatorial Atlantic[J]. Earth Science Frontiers, 2016, 23(1): 229-239. |
[37] |
胡孝林, 于水, 刘新颖, 2014: 尼日尔三角洲盆地过路朵叶体特征及发育模式[J]. 东北石油大学学报, 38, 31-39.
|
Hu Xiaolin, Yu Shui, Liu Xinying. Characteristic and development model of transient lobe in Niger Delta Basin[J]. Journal of Northeast Petroleum University, 2014, 38(5): 31-39. |